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Flux pinning strength of different superconducting artificial pins in Nb-Ti multifilamentary composites

机译:Nb-Ti复丝复合材料中不同超导人工针的助焊剂钉扎强度

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To improve the critical current density (J/sub c/) of multifilamentary Nb-Ti superconductors, the pinning characteristics of wires having different superconducting artificial pinning materials and pin sizes were studied. Nb, Nb-7.5wt.%Ta and Ta pins were introduced into each Nb-Ti filament as an artificial pinning center (APC). Magnetization was measured to obtain the magnetic field dependence of the pinning force density (F/sub P/) at various temperatures. A significant enhancement of F/sub P/ has been observed for APC wires in comparison to conventional wires. F/sub P/ increases in ascending order of Ta, Nb-Ta and Nb pins. This result reflects the elementary pinning force (f/sub P/) calculated by the Ginzburg-Landau (G-L) theory. The slope of the F/sub P/ curve for Ta pins changes at 4.4 K, where a super-normal transition occurs. We also investigated the F/sub P/ properties in a magnetic field parallel to the wire axis. In this case, the peak of F/sub P/ shifts to a higher magnetic field compared with that of a perpendicular magnetic field. This result suggests that the number of effective pinning sites in a parallel magnetic field is larger than in a perpendicular magnetic field due to the anisotropic microstructure of the pins. Furthermore, we report on their flux pinning scaling behaviors.
机译:为了提高多丝Nb-Ti超导体的临界电流密度(J / sub c /),研究了具有不同超导人工钉扎材料和引脚尺寸的导线的钉扎特性。将Nb,Nb-7.5wt。%Ta和Ta针引入到每个Nb-Ti灯丝中,作为人工钉扎中心(APC)。测量磁化强度以获得在各种温度下钉扎力密度(F / sub P /)的磁场依赖性。与传统电线相比,已观察到APC电线的F / sub P /显着提高。 F / sub P /以Ta,Nb-Ta和Nb引脚的升序递增。该结果反映了由Ginzburg-Landau(G-L)理论计算的基本钉扎力(f / sub P /)。 Ta引脚的F / sub P /曲线的斜率在4.4 K处发生变化,这时会发生超常态过渡。我们还研究了在平行于导线轴的磁场中的F / sub P /特性。在这种情况下,与垂直磁场相比,F / sub P /的峰移向更高的磁场。该结果表明,由于销的各向异性微观结构,在平行磁场中有效钉扎位点的数量大于在垂直磁场中。此外,我们报告了它们的通量钉扎缩放行为。

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